Department of Chemistry, School of Natural Sciences, Shiv Nadar University Delhi-NCR, Gautam Buddha Nagar, U.P. 201314, India.
J Chem Inf Model. 2022 Dec 26;62(24):6679-6690. doi: 10.1021/acs.jcim.2c00505. Epub 2022 Sep 8.
Modeling approaches and modern simulations to investigate the biomolecular structure and function rely on various methods. Since water molecules play a crucial role in all sorts of chemistry, the accurate modeling of water molecules is vital for such simulations. In cytochrome P450 (CYP450), in particular, water molecules play a key role in forming active oxidant that ultimately performs oxidation and metabolism. In the present study, we have highlighted the behavior of the three most widely used water models─TIP3P, SPC/E, and OPC─for three different CYP450 enzymes─CYP450, CYP450, and CYP450─during MD simulations and QM/MM calculations. We studied the various properties, such as RMSD, RMSF, H-bond, water occupancy, and hydrogen atom transfer (HAT), using QM/MM calculations and compared them for all three water models. Our study shows that the stabilities of the enzyme complexes are well maintained in all three water models. However, the OPC water model performs well for the polar active sites, that is, in CYP450 and CYP450, while the TIP3P water model is superior for the hydrophobic site, such as CYP450.
建模方法和现代模拟技术旨在研究生物分子的结构和功能,这些方法依赖于各种技术。由于水分子在各种化学反应中都起着至关重要的作用,因此准确地模拟水分子对于这些模拟至关重要。在细胞色素 P450(CYP450)中,水分子在形成最终进行氧化和代谢的活性氧化剂方面起着关键作用。在本研究中,我们强调了在 MD 模拟和 QM/MM 计算中三种最常用的水分子模型(TIP3P、SPC/E 和 OPC)在三种不同的 CYP450 酶(CYP450、CYP450 和 CYP450)中的行为。我们使用 QM/MM 计算研究了各种性质,如 RMSD、RMSF、氢键、水占有率和氢原子转移(HAT),并将它们在所有三种水分子模型中进行了比较。我们的研究表明,在所有三种水分子模型中,酶复合物的稳定性都得到了很好的维持。然而,OPC 水分子模型更适用于极性活性位点,即 CYP450 和 CYP450,而 TIP3P 水分子模型更适用于疏水性位点,如 CYP450。